Shape memory photonic metamaterial
Shape memory photonic metamaterial
We report the first reconfigurable metamaterial based on the shape memory alloy. In the heating cycle structural elements of this metamaterials exhibit a hysteresis-type shape transformation that leads to non-volatile switching of its plasmonic properties.
Tsuruta, M.
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Valente, J.
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Gholipour, B.
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MacDonald, K.
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Plum, E.
50761a26-2982-40df-9153-7aecc4226eb5
Zheludev, N.
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June 2016
Tsuruta, M.
6320a739-6945-4a50-9503-b789c7e034ce
Valente, J.
b1d50ead-5c3d-4416-ad05-3beb1b373146
Gholipour, B.
c17bd62d-9df6-40e6-bc42-65272d97e559
MacDonald, K.
76c84116-aad1-4973-b917-7ca63935dba5
Plum, E.
50761a26-2982-40df-9153-7aecc4226eb5
Zheludev, N.
32fb6af7-97e4-4d11-bca6-805745e40cc6
Tsuruta, M., Valente, J., Gholipour, B., MacDonald, K., Plum, E. and Zheludev, N.
(2016)
Shape memory photonic metamaterial.
Conference on Lasers and Electro-Optics 2016, , San Jose, United States.
05 - 10 Jun 2016.
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Conference or Workshop Item
(Paper)
Abstract
We report the first reconfigurable metamaterial based on the shape memory alloy. In the heating cycle structural elements of this metamaterials exhibit a hysteresis-type shape transformation that leads to non-volatile switching of its plasmonic properties.
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Published date: June 2016
Venue - Dates:
Conference on Lasers and Electro-Optics 2016, , San Jose, United States, 2016-06-05 - 2016-06-10
Organisations:
Optoelectronics Research Centre
Identifiers
Local EPrints ID: 390342
URI: http://eprints.soton.ac.uk/id/eprint/390342
PURE UUID: e2adcb42-5bf5-497f-a0af-fbaa96572233
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Date deposited: 23 Mar 2016 11:20
Last modified: 15 Mar 2024 03:32
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Contributors
Author:
M. Tsuruta
Author:
J. Valente
Author:
B. Gholipour
Author:
K. MacDonald
Author:
E. Plum
Author:
N. Zheludev
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